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Buckeridge, M. S. Seed cell wall storage polysaccharides: models to understand cell wall biosynthesis and degradation.
As a novel and promising seed cell, human umbilical cord Wharton's jelly mesenchymal stem cells (hWJMSCs) are widely applied in tissue engineering.
However with the limitation of scaffold material and suitable seed cell sources, the best treating strategy remains to be identified though various tissue engineering methods were reported.
To construct the tissue engineering seed cell (HaCaT cell line) with stable expression of the human epidermal growth factor (EGF), and analyze the changes of its biological characteristics.
The main hemicellulose found in plants (xyloglucan) is used as a case study along with other seed cell wall storage polysaccharides of plants to exemplify the evolution of the Glycomic Code in plants.
Therefore, MSCs can be introduced to differentiate into tenocytes by BMP12 gene transfection, and bone marrow MSCs can serve as an alternative seed cell for application in tendon tissue engineering.
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Efficient seed cells are the key to cartilage tissue engineering.
Multipotent muscle satellite cells (MuSCs) have been identified as potential seed cells for bone tissue engineering.
hES cells have promise for serving as an unlimited source of ideal seed cells for cell transplantation.
Therefore, WMSCs could be a promising seed cells in the construction of tissue-engineered tracheal cartilage.
The allogenic chondrocytes appear to be a promising source of seed cells in cartilage tissue engineering.
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